volume 54 issue 9 pages 1400-1409

Analysis of Tomographic Images of the Soil Pore Space Structure by Integral Geometry Methods

Publication typeJournal Article
Publication date2021-09-14
scimago Q2
wos Q4
SJR0.475
CiteScore2.7
Impact factor1.6
ISSN10642293, 1556195X
Earth-Surface Processes
Soil Science
Abstract

The technique of numerical analysis of three-dimensional tomographic images of the pore space of soil objects has been used in this paper. It applies methods of integral geometry, topology and morphological analysis. To characterize quantitatively the transformation of the pore space structure, tomographic images of four undisturbed soils were analyzed, i.e., heavy loamy agro-gray soil (Retic Phaeozem), agromineral (Sapric Rheic Mineralic Histosols), and hypnum (brown moss Sapric Rheic Histosols) peat soils in dry and wet conditions. For samples of the subplow horizon in agro-gray soil, a decrease in both Betty numbers was observed on wetting, where the zero number (b0) stands for the amount of topologically simple closed pores, and the first number (b1) indicates a decrease in pore connectivity, which varies in a narrower range of pore sizes as compared to b0. When a sample of agromineral peat soil is moistened, the Euler–Poincaré characteristic is negative ​in the pore range of 0.1–0.16 mm, which points to the predominating complicated branched structure of the pore space and high pore connectivity. When hypnum moss is saturated, a lot of tunnel pores get narrower (“collapse”), and the connectivity decreases due to the structural specifics of long-stemmed plant residues. The number of pores and connections between them in peat soils is an order of magnitude higher than those in the subplow horizon A of the agro-gray soil. The provided quantitative changes in the considered parameters of tomographic images of the soil pore space confirm the possibility of applying them for estimating the transformation of the pore space in soils.

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Kalnin T. G. et al. Analysis of Tomographic Images of the Soil Pore Space Structure by Integral Geometry Methods // Eurasian Soil Science. 2021. Vol. 54. No. 9. pp. 1400-1409.
GOST all authors (up to 50) Copy
Kalnin T. G., Ivonin D. A., Abrosimov K. N., Grachev E., Sorokina N. V. Analysis of Tomographic Images of the Soil Pore Space Structure by Integral Geometry Methods // Eurasian Soil Science. 2021. Vol. 54. No. 9. pp. 1400-1409.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1134/S1064229321090039
UR - https://link.springer.com/10.1134/S1064229321090039
TI - Analysis of Tomographic Images of the Soil Pore Space Structure by Integral Geometry Methods
T2 - Eurasian Soil Science
AU - Kalnin, T G
AU - Ivonin, D A
AU - Abrosimov, K N
AU - Grachev, E.A.
AU - Sorokina, N V
PY - 2021
DA - 2021/09/14
PB - Pleiades Publishing
SP - 1400-1409
IS - 9
VL - 54
SN - 1064-2293
SN - 1556-195X
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2021_Kalnin,
author = {T G Kalnin and D A Ivonin and K N Abrosimov and E.A. Grachev and N V Sorokina},
title = {Analysis of Tomographic Images of the Soil Pore Space Structure by Integral Geometry Methods},
journal = {Eurasian Soil Science},
year = {2021},
volume = {54},
publisher = {Pleiades Publishing},
month = {sep},
url = {https://link.springer.com/10.1134/S1064229321090039},
number = {9},
pages = {1400--1409},
doi = {10.1134/S1064229321090039}
}
MLA
Cite this
MLA Copy
Kalnin, T. G., et al. “Analysis of Tomographic Images of the Soil Pore Space Structure by Integral Geometry Methods.” Eurasian Soil Science, vol. 54, no. 9, Sep. 2021, pp. 1400-1409. https://link.springer.com/10.1134/S1064229321090039.